期刊信息

  • 刊名: 河北师范大学学报(自然科学版)Journal of Hebei Normal University (Natural Science)
  • 主办: 河北师范大学
  • ISSN: 1000-5854
  • CN: 13-1061/N
  • 中国科技核心期刊
  • 中国期刊方阵入选期刊
  • 中国高校优秀科技期刊
  • 华北优秀期刊
  • 河北省优秀科技期刊

青藏高原物候研究的热点和趋势——基于CiteSpace可视化分析

  • (河北师范大学 地理科学学院,河北省环境演变与生态建设实验室,河北 石家庄 050024)
  • DOI: 10.13763/j.cnki.jhebnu.nse.202305001

Hotspots and Trends of Phenology Studies in Qinghai-Tibet Plateau:Visual Analysis Based on Citespace

摘要/Abstract

摘要:

基于1994—2020年关于青藏高原地区植被物候的已发表文献资料,利用CiteSpace可视化技术、文献研究法等分析近27 a青藏高原地区植被物候变化趋势及影响因素,并对该地区物候研究的热点及未来的研究方向进行分析. 结果表明,青藏高原地区物候研究的年发文量总体呈上升趋势,发文内容以青藏高原地区物候与气候变化之间的关系为主,遥感技术取代传统地面观测成为研究青藏高原植被物候的主要手段. 近27 a青藏高原地区植被返青期呈提前趋势,枯黄期变化趋势尚无一致结论,生长季长度呈延长趋势; 气温和降水为物候期变化的主导因素,暖湿条件使物候期提前,暖干条件则会不同程度推迟物候期. 未来应在不同研究手段整合的基础上对青藏高原地区植被物候开展多尺度研究.

Abstract:

Based on published literature of vegetation phenology in Qinghai-Tibet Plateau from 1994 to 2020,using CiteSpace visualization technology and literature research method vegetation phenology change trend of Qinghai-Tibet Plateau in nearly 27 years and its influence factors are analyzed,and phenology research hotspots in this region and the future research direction are further analyzed. The results show that the number of published papers on phenology of Qinghai-Tibet Plateau presents rising trend.The researches focus on the relationship between phenology and climate change in Qinghai-Tibet Plateau.Remote sensing technology has replaced traditional ground observation as the main means to study vegetation phenology in Qinghai-Tibet Plateau.In recent 27 years,vegetation greening period in Qinghai-Tibet Plateau shows earlier trend,while the change trend of withering and yellowing period is not consistent,and the length of growth season shows increasing trend.Temperature and precipitation are the main factors of phenology change.Warm and humid conditions advances phenological period,while warm and dry conditions delays phenological period at different degrees.Multi-scale studies of vegetation phenology in Tibetan Plateau should be carried out based on the integration of different research methods in the future.

参考文献 43

  • [1] 成青.竺可桢的物候学研究与影响 [D]. 杭州:浙江工业大学,2019. doi: 10.27463/d.cnki.gzgyu.2019.000375 CHENG Qing.Zhu Kezhen′s Phenological Research and Its Impact [D]. Hangzhou:Zhejiang University of Technology,2019.
  • [2] 葛全胜,戴君虎,郑景云.物候学研究进展及中国现代物候学面临的挑战 [J]. 中国科学院院刊,2010,25(3):310-316. doi:10.3969/j.issn.1000-3045.2010.03.013 GE Quansheng,DAI Junhu,ZHENG Jingyun.The Progress of Phenology Studies and Challenges to Modern Phenology Research in China [J]. Bulletin of Chinese Academy of Sciences,2010,25 (3):310-316.
  • [3] 曾彪.青藏高原植被对气候变化的响应研究(1982—2003) [D]. 兰州:兰州大学,2008. doi: 10.7666/d.Y1332622 ZENG Biao.Vegetation Responses to Climate Change on the Tibetan Plateau(1982—2003) [D]. Lanzhou:Lanzhou University,2008.
  • [4] 焦阜生.植被物候变化趋势的演变及其对气候变化的非线性响应 [D]. 南京:南京师范大学,2020. doi: 10.27245/d.cnki.gnjsu.2020.001573 JIAO Fusheng.Evolution of Vegetation Phenological Trend and Its Nonlinear Response to Climate Change [D]. Nanjing:Nanjing Normal University,2020.
  • [5] 郝楠.青藏高原植物物候变化探讨 [J]. 种子科技,2020,38(23):117-118. doi: 10.3969/j.issn.1005-2690.2020.23.057 HAO Nan.Research on Phenological Changes of Plants in Qinghai-Tibet Plateau [J]. The Seeds of Science and Technology,2020,38(23):117-118.
  • [6] 刘双俞,张丽,王翠珍,等.基于MODIS数据的青藏高原植被物候变化趋势研究(2000—2010年) [J]. 遥感信息,2014,29(6):25-30. doi: 10.3969/j.issn.1000-3177.2014.06.006 LIU Shuangyu,ZHANG Li,WANG Cuizhen,et al.Vegetation Phenology in the Tibetan Plateau Based on MODIS Data from 2000 to 2010 [J]. Remote Sensing Information,2014,29(6):25-30.
  • [7] 丁明军,张镱锂,孙晓敏,等.近10年青藏高原高寒草地物候时空变化特征分析 [J]. 科学通报,2012,57(33):3185-3194. doi: 10.1360/csb2012-57-33-3185 DING Mingjun,ZHANG Yili,SUN Xiaomin,et al.Spatial-temporal Variation of Phenology in Alpine Grassland of Qinghai-Tibet Plateau in Recent 10 Years [J]. Chinese Science Bulletin,2012,57 (33):3185-3194.
  • [8] 郑度,赵东升.青藏高原的自然环境特征 [J]. 科技导报,2017,35(6):13-22. doi: 10.3981/j.issn.1000-7857.2017.06.001 ZHENG Du,ZHAO Dongsheng.Characteristics of Natural Environment in Qinghai-Tibet Plateau [J]. Science and Technology Review,2017,35(6):13-22.
  • [9] 陈悦,陈超美,刘则渊,等.CiteSpace知识图谱的方法论功能 [J]. 科学研究,2015,33(2):242-253. doi: 10.3969/j.issn.1003-2053.2015.02.009 CHEN Yue,CHEN Chaomei,LIU Zeyuan,et al.The Methodology Function of CiteSpace Mapping Konwledge Domains [J]. Studies in Science of Science,2015,33(2):242-253.
  • [10] 陈婷婷.国内互动视频教学研究的热点、趋势与启示——基于CiteSpace的数据可视化分析 [J]. 中国医学教育技术,2021,35(3):314-321. doi: 10.13566/j.cnki.cmet.cn61-1317/g4.202103009 CHEN Tingting.Hot Spots,Trends and Enlightenment of Domestis Interactive Video Teaching Research:A Visualized Data Analysis Based on CiteSpace [J]. China Medical Education Technology,2021,35(3):314-321.
  • [11] 丁明军,李兰晖,张镱锂,等.1971—2012年青藏高原及周边地区气温变化特征及其海拔敏感性分析 [J]. 资源科学,2014,36(7):1509-1518. DING Mingjun,LI Lanhui,ZHANG Yili,et al.Temperature Change and Its Elevation Dependency on the Tibetan Plateau and Its Vicinity from 1971 to 2012 [J]. Resources Science,2014,36(7):1509 -1518.
  • [12] SUN Q,LI B,YUAN Y,et al.A Prognostic Phenology Model for Alpine Meadows on the Qinghai-Tibetan Plateau [J]. Ecological Indicators,2018,93:1089-1100. doi: 10.1016/j.ecolind.2018.05.061
  • [13] 贾蕾,曾彪,杨太保,等.近半个世纪以来中国季风区气温与降水变化及其时空差异 [J]. 兰州大学学报(自然科学版),2015,51(2):186-192,201. doi: 10.13885/j.issn.0455-2059.2015.02.007 JIA Lei,ZENG Biao,YANG Taibao,et al.Temperature and Precipitation Changes in the Chinese Monsoon Region During the Recent Half Century and the Spatio-temporal Differences Thereof [J]. Journal of Lanzhou University(Natural Sciences),2015,51(2):186-192,201.
  • [14] ZHAO D,GAO X,WU S.Nonuniform Variations of Precipitation and Temperature Across China over the Period 1960—2015 [J]. International Journal of Climatology,2021,41(1):316-327. doi: 10.1002/joc.6622
  • [15] WANGS J,ZHANG M J,PEPIN N C,et al.Recent Changes in Freezing Level Heights in High Asia and Their Impact on Glacier Changes [J]. Journal of Geophysical Research:Atmospheres,2014,119(4):1753-1765. doi: 10.1002/2013JD020490
  • [16] PIAO S,CUI M,CHEN A,et al.Altitude and Temperature Dependence of Change in the Spring Vegetation Green-up Date from 1982 to 2006 in the Qinghai-Xizang Plateau [J]. Agricultural and Forest Meteorology,2011,151(12):1599-1608. doi: 10.1016/j.agrformet.2011.06.016
  • [17] 丁佳,刘星雨,郭玉超,等.1980—2015年青藏高原植被变化研究 [J]. 生态环境学报,2021,30(2):288-296. doi: 10.16258/j.cnki.1674-5906.2021.02.007 DING Jia,LIU Xingyu,GUO Yuchao,et al.Study on Vegetation Change in the Qinghai Tibet Plataeu from 1980 to 2015 [J]. Ecology and Environmental Sciences,2021,30(2):288-296.
  • [18] WANG J,ZHOU T,PENG P.Phenology Response to Climatic Dynamic Across China′s Grasslands from 1985 to 2010 [J]. Isprs International Journal of Geo-information,2018,7(8):290. doi: 10.3390/ijgi7080290
  • [19] 王力,张强.近20年青藏高原典型高寒草甸化草原植物物候变化特征 [J]. 高原气象,2018,37(6):1528-1534. doi: 10.7522/j.issn.1000-0534.2018.00090 WANG Li,ZHANG Qiang.Analysis of Phytogeographic Characteristics of Typical Alpine Grassland Steppe in Qinghai Tibetan Plateau Recently 20 Years [J]. Plateau Meteorology,2018,37 (6):1528-1534.
  • [20] GANJURJAV H,GAO Q,SCHWARTZ M W,et al.Complex Responses of Spring Vegetation Growth to Climate in a Moisture-limited Alpine Meadow [J]. Scientific Reports,2016,6(1):1-10. doi: 10.1038/srep23356
  • [21] WANG H,MA M,WANG X,et al.Seasonal Variation of Vegetation Productivity over an Alpine Meadow in the Qinghai-Tibet Plateau in China:Modeling the Interactions of Vegetation Productivity,Phenology,and the Soil Freeze-thaw Process [J]. Ecological Research,2013,28(2):271-282. doi: 10.1007/s11284-012-1015-8
  • [22] GANJURJAV H,GORNISH E,HU G,et al.Phenological Changes Offset the Warming Effects on Biomass Production in an Alpine Meadow on the Qinghai-Tibetan Plateau [J]. Journal of Ecology,2021,109(2):1014-1025. doi: 10.1111/1365-2745.13531
  • [23] XIA J,YI G,ZHANG T,et al.Interannual Variation in the Start of Vegetation Growing Season and Its Response to Climate Change in the Qinghai-Tibet Plateau Derived from MODIS Data During 2001 to 2016 [J]. Journal of Applied Remote Sensing,2019,13(4):048506. doi: 10.1117/1.JRS.13.048506
  • [24] 宋春桥,游松财,柯灵红,等.藏北高原植被物候时空动态变化的遥感监测研究 [J]. 植物生态学报,2011,35(8):853-863. doi: 10.3724/SP.J.1258.2011.00853 SONG Chunqiao,YOU Songcai,KE Linghong,et al.Spatio-temporal Variation of Vegetation Phenology in the Northern Tibetan Plateau as Deteced by MODIS Remote Sensing [J]. Chinese Journal of Plant Ecology,2011,35(8):853-863.
  • [25] 王鑫,曾彪,仝莉棉,等.近23年来青藏高原东北部香日德地区高寒草甸上界变化及其与气候变化关系研究 [J]. 水土保持研究,2015,22(5):294-299. doi: 10.13869/j.cnki.rswc.2015.05.053 WANG Xin,ZENG Biao,TONG Limian,et al.Changes of Upper Boundary of Alpine Meadow and Its Relationship with Climate Change in Xiangride Region,Northeastern Tibetan Plateau in Recent 23 Years [J]. Research of Soil and Water Conservatio,2015,22(5):294-299.
  • [26] GANJURJAV H,GORNISH E S,HU G,et al.Warming and Precipitation Addition Interact to Affect Plant Spring Phenology in Alpine Meadows on the Central Qinghai-Tibetan Plateau [J]. Agricultural and Forest Meteorology,2020,287:107943. doi: 10.1016/j.agrformet.2020.107943
  • [27] 管琪卉,丁明军,张华敏.青藏地区高寒草地春季物候时空变化及其对气候变化的响应 [J]. 山地学报,2019,37(5):639-648. doi: 10.16089/j.cnki.1008-2786.000455 GUAN Qihui,DING Mingjun,ZHANG Huamin.Spatiotemporal Variation of Spring Phenology in Alpine Grassland and Response to Climate Changes on the Qinghai-Tibet China [J]. Mountain Research,2019,37(5):639-648.
  • [28] 徐振锋,胡庭兴,张力,等.青藏高原东缘林线交错带糙皮桦幼苗光合特性对模拟增温的短期响应 [J]. 植物生态学报,2010,34(3):263-270. doi: 10.3773/j.issn.1005-264x.2010.03.003 XU Zhenfeng,HU Tingxing,ZHANG Li,et al.Short-term Gas Exchange Responses of Betula Utilis to Simulated Global Warming in a Timberline Ecotone,Eastern Tibetan Platean,China [J]. Chinese Journal of Plant Ecology,2010,34(3):263-270.
  • [29] 李向前,贾鹏,章志龙,等.青藏高原东缘高寒草甸植物群落的开花物候 [J]. 生态学杂志,2009,28(11):2202-2207. doi: 10.13292/j.1000-4890.2009.0353 LI Xiangqian,JIA Peng,ZHANG Zhilong,et al.Flowering Phenology of Alpine Meadow Plant Community in Eastern Qinghai-Tibetan Plateau [J]. Chinese Journal of Ecology,2009,28(11):2202- 2207.
  • [30] 刘珍.增温对入侵植物空心莲子草与本土植食性昆虫互作关系的影响 [D]. 郑州:河南大学,2019. LIU Zhen.Effects of Warming on Interactions Between Invasive Plant Alternanthera Philoxeroides and Netive Herbivores [D]. Zhengzhou:Henan University,2019.
  • [31] DU J,HE Z,PIATEK K B,et al.Interacting Effects of Temperature and Precipitation on Climatic Sensitivity of Spring Vegetation Green-up in Arid Mountains of China [J]. Agricultural and Forest Meteorology,2019,269:71-77. doi: 10.1016/j.agrformet.2019.02.008
  • [32] 刘鑫,李文辉,赵恒和.高寒草原草地植被物候期及其与气象因子的关系模式 [J]. 中国农学通报,2019,35(22):117-122. LIU Xin,LI Wenhui,ZHAO Henghe.Grassland Vegetation in Alpine Grassland:Phenology Period and Its Relation Patterns with Meteorological Factors [J]. Chinese Agricultural Science Bulletin,2019,35(22):117-122.
  • [33] DING M,LI L,ZHANG Y,et al.Start of Vegetation Growing Season on the Tibetan Plateau Inferred from Multiple Methods Based on GIMMS and SPOT NDVI Data [J]. Journal of Geographical Sciences,2015,25(2):131-148. doi: 10.1007/s11442-015-1158-y
  • [34] AN S,CHEN X,ZHANG X,et al.Precipitation and Minimum Temperature Are Primary Climatic Controls of Alpine Grassland Autumn Phenology on the Qinghai-Tibet Plateau [J]. Remote Sensing,2020,12(3):431. doi: 10.3390/rs12030431
  • [35] DING M,ZHANG Y,SUN X,et al.Spatiotemporal Variation in Alpine Grassland Phenology in the Qinghai-Tibetan Plateau from 1999 to 2009 [J]. Chinese Science Bulletin,2013,58(3):396- 405. doi: 10.1007/s11434-012-5407-5
  • [36] 宋春桥,游松财,柯灵红,等.藏北高原典型植被样区物候变化及其对气候变化的响应 [J]. 生态学报,2012,32(4):41-51. doi: 10.5846/stxb201101050014 SONG Chunqiao,YOU Songcai,KE Linghong,et al.Phenological Variation of Typical Vegetation Types in Northern Tibet and Its Response to Climate Changes [J]. Acta Ecologica Sinica,2012,32 (4):41-51.
  • [37] 付阳,陈辉,张斯琦,等.基于群落类型的寒区旱区物候特征及其对气候因子的响应——以2000—2019年柴达木盆地为例 [J]. 地理研究,2021,40(1):52-66. doi: 10.11821/dlyj020200327 FU Yang,CHEN Hui,ZHANG Siqi,et al.Phenological Characteristics of Alpine Arid Region Based on Biome Type and Its Responses to Climate Factors:A Case Study of Qaidam Basin from 2000 to 2019 [J]. Geographical Research,2021,40(1):52-66.
  • [38] 周玉科,刘建文.基于MODIS NDVI和多方法的青藏高原植被物候时空特征分析 [J]. 遥感技术与应用,2018,33(3):486-498. doi: 10.11873/j.issn.1004-0323.2018.3.0486 ZHOU Yuke,LIU Jianwen.Spatio-temporal Analysis of Vegetation Phenology with Multiple Methods over the Tibet an Plateau Based on MODIS NDVI Data [J]. Remote Sensing Technology and Application,2018,33(3):486-498.
  • [39] 郑度,赵东升.青藏高原高寒荒漠地带与寒冷干旱核心区域 [J]. 干旱区研究,2019,36(1):1-6. doi: 10.13866/j.azr.2019.01.01 ZHENG Du,ZHAO Dongsheng.Alpine Desert Zone and Cold Arid Core Area of Qinghai-Tibet Plateau [J]. Arid Zone Research,2019,36(1):1-6.
  • [40] CHENG M,JIN J,ZHANG J,et al.Effect of Climate Change on Vegetation Phenology of Different Land-cover Types on the Tibetan Plateau [J]. International Journal of Remote Sensing,2018,39(2):470-487. doi: 10.1080/01431161.2017.1387308
  • [41] WANG H,LIU H,CAO G,et al.Alpine Grassland Plants Grow Earlier and Faster but Biomass Remains Unchanged over 35 Years of Climate Change [J]. Ecology Letters,2020,23(4):701-710. doi: 10.1111/ele.13474
  • [42] ZHENG Z,ZHU W,CHEN G,et al.Continuous but Diverse Advancement of Spring-summer Phenology in Response to Climate Warming Across the Qinghai-Tibetan Plateau [J]. Agricultural and Forest Meteorology,2016,223:194-202. doi: 10.1016/j.agrformet.2016.04.012
  • [43] ZHOU Y,FAN J,WANG X.Assessment of Varying Changes of Vegetation and the Response to Climatic Factors Using GIMMS NDVI3g on the Tibetan Plateau [J]. Plos One,2020,15 (6):e0234848. doi: 10.1371/journal.pone.0234848